A classical model is proposed in which two nonlinear Klein–Gordon fields interact via the electromagnetic field. Scaling is such that solitons in the two fields can be interpreted as electrons and protons, respectively. Even though the masses are very different, the magnitude of the charge of the electron-like soliton is the same as that of the proton-like soliton. Attraction and repulsion occur in the desired way through the interaction with the electromagnetic field
In this work we develop a time-symmetric soliton theory for quantum particles inspired from works by...
"We present an approach to the bright soliton solution of the nonlinear Schrödinger (NLS) equation f...
This paper aims to present the pure field part of the newly developed nonlinear Extended Electrodyna...
Solitary waves and solitons are briefly discussed in their historical context, especially regarding ...
In 1927 Louis de Broglie proposed an alternative approach to standard quantum mechanics known as the...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
This work represents a possible way to achieve the Einstein-de Broglie soliton-particle concept. The...
This work represents a possible way to achieve the Einstein-de Broglie soliton-particle concept. The...
Tachyons or hypothetical faster-than-light (FTL) particles would fail the principle of causality. Su...
Recently, no-go theorems for the existence of solitonic solutions in Einstein-Maxwell-scalar (EMS) m...
All supersymmetric generalizations of the Standard Model allow for stable non-topological solitons o...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
We study an effective integrable nonlinear model describing an electron moving along the axis of a d...
All supersymmetric generalizations of the Standard Model allow for stable non-topological solitons o...
In this work we develop a time-symmetric soliton theory for quantum particles inspired from works by...
"We present an approach to the bright soliton solution of the nonlinear Schrödinger (NLS) equation f...
This paper aims to present the pure field part of the newly developed nonlinear Extended Electrodyna...
Solitary waves and solitons are briefly discussed in their historical context, especially regarding ...
In 1927 Louis de Broglie proposed an alternative approach to standard quantum mechanics known as the...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
This work represents a possible way to achieve the Einstein-de Broglie soliton-particle concept. The...
This work represents a possible way to achieve the Einstein-de Broglie soliton-particle concept. The...
Tachyons or hypothetical faster-than-light (FTL) particles would fail the principle of causality. Su...
Recently, no-go theorems for the existence of solitonic solutions in Einstein-Maxwell-scalar (EMS) m...
All supersymmetric generalizations of the Standard Model allow for stable non-topological solitons o...
In this paper it is shown how higher-dimensional solitons can be stabilized by a topological phase g...
We study an effective integrable nonlinear model describing an electron moving along the axis of a d...
All supersymmetric generalizations of the Standard Model allow for stable non-topological solitons o...
In this work we develop a time-symmetric soliton theory for quantum particles inspired from works by...
"We present an approach to the bright soliton solution of the nonlinear Schrödinger (NLS) equation f...
This paper aims to present the pure field part of the newly developed nonlinear Extended Electrodyna...